( Brand: Scientific Atlanta ), ( Manufacturer Part Number: 590935 ), ( Intended Use/discipline: Cable Internet )
The 590935 Scientific Atlanta 2.0mW 1310nm DFB Fiber Node Transmitter is a high-performance optical transmission device designed for use in optical communication networks. This transmitter utilizes a Distributed Feedback (DFB) laser diode emitting at a wavelength of 1310nm, which is a common wavelength for telecom applications due to its excellent transmission characteristics and low dispersion.
The transmitter is rated for a maximum output power of 2.0mW, providing sufficient signal strength for long-haul and metro-area optical networks. The device features a compact form factor, making it easy to integrate into a variety of optical transmission systems.
The 590935 Scientific Atlanta Fiber Node Transmitter is designed for excellent optical signal quality, with a low noise figure and high modulation efficiency. It supports a wide range of modulation formats, including On-Off Keying (OOK) and Direct Detection (DD) modulations, making it compatible with a wide range of optical communication systems.
The transmitter is also designed for reliability and longevity, with a long operating life and a robust construction that can withstand the challenging environmental conditions often encountered in telecom applications. It is also equipped with built-in temperature compensation and thermal management features, ensuring stable operation and high performance over a wide temperature range.
In summary, the 590935 Scientific Atlanta 2.0mW 1310nm DFB Fiber Node Transmitter is a high-performance, compact, and reliable optical transmission device that is well-suited for use in a wide range of telecom applications. Its features, such as its low noise figure, high modulation efficiency, and wide range of modulation formats, make it a versatile and powerful choice for optical communication networks.
Pros of buying a 590935 Scientific Atlanta 2.0MW 1310nm DFB 6940 Fiber Node Transmitter:1. High Power Output: With a power output of 2.0MW, this transmitter can deliver a strong signal over long distances, making it suitable for use in fiber optic communication networks.
2. 1310nm Wavelength: The 1310nm wavelength is widely used in fiber optic communication systems due to its low attenuation and high transmission efficiency.
3. DFB Technology: The Distributed Feedback (DFB) technology used in this transmitter ensures stable and reliable operation, reducing the risk of signal distortion and noise.
4. Compact Design: The 590935 is a compact device, making it easy to integrate into existing fiber optic systems and reducing installation costs.
Cons of buying a 590935 Scientific Atlanta 2.0MW 1310nm DFB 6940 Fiber Node Transmitter:1. Expensive: The high power output and advanced technology used in this transmitter make it a relatively expensive option compared to other fiber optic transmitters on the market.
2. Requires Power Supply: This transmitter requires a separate power supply unit, which can add to the overall cost and complexity of the installation.
3. Limited Compatibility: The 590935 is designed for use with specific types of fiber optic cables and may not be compatible with all types of fiber optic systems.
Ending Conclusion:The 590935 Scientific Atlanta 2.0MW 1310nm DFB 6940 Fiber Node Transmitter is a high-performance device that is well-suited for use in fiber optic communication networks that require a strong signal over long distances. Its compact design and advanced DFB technology ensure reliable operation, but its high cost and limited compatibility may make it a less suitable option for some applications.
Recommendation:If you require a high-power transmitter for use in a fiber optic communication network, the 590935 Scientific Atlanta 2.0MW 1310nm DFB 6940 Fiber Node Transmitter is a strong contender. However, be sure to consider the additional costs of a separate power supply and ensure compatibility with your existing fiber optic system before making a purchase. If budget is a concern, you may want to consider lower-power transmitters that offer similar performance but at a lower cost.
This item has been lab tested and is working properly.